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Secrecy analysis of a MIMO full-duplex active eavesdropper with channel estimation errors

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Kong, Long, He, Jiguang, Kaddoum, Georges, Vuppala, Satyanarayana et Wang, Lin. 2016. « Secrecy analysis of a MIMO full-duplex active eavesdropper with channel estimation errors ». In IEEE 84th Vehicular Technology Conference (VTC-Fall) (Montreal, QC, Canada, Sept. 18-21, 2016), p. 5. IEEE.

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Abstract

In this paper, we investigate the secrecy performance of the multiple-input multiple-output (MIMO) wiretap channels in the presence of an active full-duplex eavesdropper with consideration of channel estimation error at the legitimate destination and eavesdropper. For this purpose, the probability density functions (PDFs) and cumulative density functions (CDFs) of the receive signal-to-interference-plus-noise ratio (SINR) at the destination and eavesdropper are given by conducting the singular value decomposition (SVD) on the estimated channel coefficient matrices. Consequently, the closed- form expressions for the probability of positive secrecy capacity and secrecy outage probability over Rayleigh fading channels are derived. Finally, the Monte-Carlo simulation results are presented to validate the accuracy of our theoretical analysis.

Item Type: Conference proceeding
Professor:
Professor
Kaddoum, Georges
Affiliation: Génie électrique
Date Deposited: 24 Aug 2017 15:37
Last Modified: 27 Nov 2017 19:47
URI: http://espace2.etsmtl.ca/id/eprint/15713

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